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2020 | 31 |

Tytuł artykułu

Manufacturing of activated carbon using disposable coconut shells

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

31

Opis fizyczny

p.25-35,fig.,ref.

Twórcy

autor
  • Department of Chemical and Process Engineering, University of Peradeniya, Peradeniya, 20400, Sri Lanka
autor
  • Department of Chemical and Process Engineering, University of Peradeniya, Peradeniya, 20400, Sri Lanka
  • Department of Physics, University of Peradeniya, Peradeniya, 20400, Sri Lanka

Bibliografia

  • [1] Anneli Andersson, Patrick Laureent, Impact of Temperature on Nitrification in Biological Activated Carbon (BAC) Filters Used for Drinking Water Treatment. Water Research Journal (2001), 35(12), 2923-2934.
  • [2] Katherine E. Safford and Laura W. Lackey, The Development of a Dual Media Biological Sand Filter with Added Component of Activated Carbon for Use in Vietnam, ASEE Southeast Section Conference, (2014).
  • [3] A. Magic-Knezev and D. van der Kooij, Optimization and significance of ATP analysis for measuring active biomass in granular activated carbon filters used in water treatment. Water Research Journal (2004), 38(18), 3971-3979
  • [4] G.M. Walker L.R. Weateherley, Biological Activated Carbon Treatment of Industrial Wastewater in Stirred Tank Reactors. Chemical Engineering Journal, (1999), 75(3), 201-206
  • [5] Woo Hang Kim and Wataru Nishijima, Micropollutant Removal with Saturated Biological Activated Carbon (BAC) in Ozonation-BAC Process. Water Science and Technology Journal, (1997), 36(12), 283-298
  • [6] W. Nishijima and E.G Speitel, Fate of Biodegradable Dissolved Organic Carbon Produced by Ozonation on Biological Activated Carbon. Chemosphere Journal, (2004), 56(2), 113-119
  • [7] M. Scholz and R.J Martin, Ecological Equilibrium on Biological Activated Carbon, Water Research Journal, (1997), 31(12), 2959-2968
  • [8] B.Z Wang. The Efficacy and Mechanism of Removal of Organic Substances from Water by Ozone and Activated Carbon. Water Science and Technology, (1999), 30(1), 43-47
  • [9] G. Wyasu, C. E. Gimba, E. B. Agbaji and G. I. Ndukwe, Thermo-gravimetry (TGA) and DSC of thermal analysis techniques in production of active carbon from lignocellulosic materials. Advances in Applied Science Research, (2016), 7(2), 109-115
  • [10] D. Urfer and P.M. Huck, Measurement of biomass activity in drinking water biofilters using a respirometric method. Water Research Journal, (2000), 35(6), 1469-1477
  • [11] P. Servais, G. Billen and P. Bouillot, Biological colonization of granular activated carbon filters in drinking-water treatment. Journal of Environmental Engineering, (1994), 120(4), 888-899
  • [12] S. Velten, F. Hammes, M. Boller and T. Egli, Rapid and direct estimation of active biomass on granular activated carbon through adenosine tri-phosphate (ATP) determination. Water Research Journal, (2007), 41, 1973-1983
  • [13] A. Magic-Knezev, B. Wullings and D. van der Kooij, Polaromonas and Hydrogenophagaspecies are the predominant bacteria cultured from granular activated carbon filters in water treatment. Journal of Applied Microbiology, (2009), 107(5), 1457-1467.
  • [14] C.H. Liang, P.C. Chiang and E.E. Chang, Systematic Approach to Quantify Adsorption and Biodegradation Capacities on Biological Activated Carbon following Ozonation. Journal of Ozone Science & Engineering, (2003), 25, 351-361
  • [15] A. Dabrowski, Adsorption - from theory to practice. Advances in Colloid and Interface Science, (2001), 93, 135-224.
  • [16] F. L Slejko. Adsorption technology. Marcel Dekker Publication, New York, USA, (1985).
  • [17] S, Renou, J G, Givaudan, S. Poulain F. Dirassouyan and P. Moulin, Review - Landfill leachate treatment, Review and opportunity. Journal of Hazardous Materials, (2008), 150, 468-493
  • [18] Bikash Adhikari, Khet Raj Dahal and Sanjay Nath Khanal. A Review of Factors Affecting the Composition of Municipal Solid Waste Landfill Leachate. International Journal of Engineering Science and Innovative Technology, (2014), 3(5), 273-281

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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